材料科学
铜
色散(光学)
烧结
维氏硬度试验
电导率
冶金
氧化物
电阻率和电导率
扫描电子显微镜
金属注射成型
氧化铜
复合材料
微观结构
光学
电气工程
工程类
物理
物理化学
化学
作者
Jakob Scheibler,Thomas Studnitzky,Thomas Weißgärber
摘要
Dispersion strengthening of copper enables the combination of high strength and high conductivity. However, production of dispersion strengthened materials is complex and only yields semi-finished products. The following work presents a new approach based on cuprous oxide as matrix with dispersed alumina. Powder mixtures are printed into a near net shape part via Lithography-based Metal Manufacturing. After debinding, cuprous oxide is reduced to copper in a hydrogen sintering atmosphere. Furthermore, the influence of milling the powder mixtures is investigated with samples produced by film drawing. Characterization includes scanning electron microscopy, Vickers hardness, and electrical conductivity measurements. Electrical conductivity reaches values of up to 78 % IACS. Vickers hardness surpasses pure copper, however, falls short of comparative values from the literature for dispersion-strengthened materials. Reasons for that are insufficient densification and suboptimal dispersoid distribution.
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